1 citations
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May 2012 in “International Conference on Biomedical Engineering and Biotechnology” TGF-β receptor 1 helps deer antlers grow by aiding skin and cartilage cell growth.
42 citations
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April 2016 in “Plastic and reconstructive surgery/PSEF CD journals” The hydrogel with fractionated PRP improves skin regeneration by enhancing wound healing and growth of skin structures.
December 2023 in “Sains Malaysiana” The enzyme Rand protease works well for leather dehairing and its stability is important, with Leu75 playing a key role.
June 2019 in “Journal of Hypertension” Magnesium deficiency raises diastolic blood pressure and reduces vascular contraction.
August 2025 in “OPAL (Open@LaTrobe) (La Trobe University)” Machine learning optimized microneedles promote hair regrowth better than minoxidil without safety risks.
2 citations
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January 2023 in “Ceramics International” The 3D printed scaffold with SB216763 and copper helps heal wounds and regrow skin and hair.
PRP is a safe, low-cost treatment used in dermatology for hair loss, skin rejuvenation, scar repair, and wound healing.
January 2002 in “Academic Journal of Kunming Medical College” Human-hair keratin artificial tendons are biocompatible and degrade well in rabbits.
October 2025 in “Journal of the Endocrine Society” Stopping Viviscal, a hair loss product, normalized the woman's elevated alkaline phosphatase levels.
July 2024 in “Bozok Tıp Dergisi” Platelet-rich plasma treatment shows early improvement in femur head avascular necrosis.
5 citations
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January 1998 in “Journal of Toxicologic Pathology” Maneb causes delayed hair follicle damage in rats.
4 citations
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August 2018 in “Facial Plastic Surgery Clinics of North America” Platelet-Rich Plasma (PRP), a protein-rich extract from a patient's blood, shows promise in improving hair density, thickness, and quality, but the best method of use and number of treatments needed for noticeable results are still unclear.
January 2008 in “Annals of Nutrition and Metabolism” Parthenolide promotes hair growth in mice and may influence pathways related to male pattern baldness.
343 citations
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March 2016 in “Nature Communications” IL-17-producing γδ T cells help improve bone healing.
March 2026 in “Folia Histochemica et Cytobiologica” LTBP1 is a key regulator in diseases and a potential target for new treatments.
36 citations
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January 2010 in “Journal of Pediatric Endocrinology and Metabolism” A new gene mutation causes vitamin D resistance and hair loss in two unrelated girls.
July 2017 in “Skin appendage disorders” Platelet-Rich Plasma (PRP) is becoming popular for treating hair loss and it's important for dermatologists to understand how it works and its safety.
PRP therapy improves hair density and satisfaction more than Minoxidil for androgenetic alopecia.
6 citations
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September 2019 in “Indian Journal of Dermatology” August 2024 in “Journal of Clinical Medicine” PRP shows promise but lacks consistent evidence and regulation.
29 citations
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January 2003 in “KARGER eBooks” HVDRR is caused by VDR gene mutations, leading to vitamin D resistance, treatable with high calcium doses, but alopecia remains permanent.
4 citations
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November 2023 in “Biological and Pharmaceutical Bulletin” The serum reduced thigh fat and improved skin firmness.
16 citations
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November 2019 in “Dermatologic Surgery” Platelet-rich plasma is most effective for hair loss treatment and shows promise for skin healing and rejuvenation, but more standardized research is needed.
Using calvarial bone for maxilla augmentation is less painful and allows for single-procedure dental implants.
44 citations
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July 1993 in “Journal of Investigative Dermatology” April 2016 in “한국고분자학회 학술대회 연구논문 초록집” Vitamin D receptor actions without binding are crucial for healthy skin and hair.
42 citations
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May 1997 in “The Journal of Biochemistry” PAD type III enzyme is specific to rat skin and hair follicles.
6 citations
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January 2021 in “Journal of the American Academy of Dermatology” PRP treatments for hair loss need standard protocols to be reliable.
3 citations
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July 2025 in “BMC Oral Health” The scaffold could effectively replace traditional methods for bone regeneration in dental applications.